首页> 外文会议>ASME summer heat transfer conference;HT2009 >MATHEMATICAL MODELING OF A MINIATURE LOOP HEAT PIPE WITH TWO EVAPORATORS AND TWO CONDENSERS
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MATHEMATICAL MODELING OF A MINIATURE LOOP HEAT PIPE WITH TWO EVAPORATORS AND TWO CONDENSERS

机译:带有两个蒸发器和两个冷凝器的微型环热管的数学建模

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A loop heat pipe (LHP) analytical model that simulates the Steady state and transient thermal behaviors of LHPs with multiple evaporators and multiple condensers has recently been developed. It can be used as a stand-alone computer code or as a subroutine to general spacecraft thermal analyzers. Multi-evaporator and multi-condenser LHPs are more complex in their operation when compared to single-evaporator LHPs because of the thermal and fluid interactions among the evaporators, compensation chambers, and condensers. This analytical model has been used to simulate the thermal performance of a miniature loop heat pipe (MLHP) with two evaporators and two condensers in laboratory and thermal vacuum tests. In addition, the MLHP was tested in the laboratory under five different configurations where the relative elevations and tilts among loop components were varied so as to investigate the gravity effects on the loop performance and to verify the analytical model's capability to predict such effects. The MLHP performance tests that were simulated included start-up, high power, heat transport limit, and heat load sharing between the two evaporators. In all tests that were modeled, the LHP analytical model accurately predicted the steady state and transient behaviors of the LHP. Furthermore, the model was run-time efficient and yielded stable solutions in all cases.
机译:最近已经开发了一种环路热管(LHP)分析模型,该模型可以模拟具有多个蒸发器和多个冷凝器的LHP的稳态和瞬态热行为。它可以用作独立的计算机代码,也可以用作常规航天器热分析仪的子例程。与单蒸发器LHP相比,多蒸发器和多冷凝器LHP的操作更为复杂,因为蒸发器,补偿室和冷凝器之间存在热和流体相互作用。在实验室和热真空测试中,该分析模型已用于模拟带有两个蒸发器和两个冷凝器的微型环路热管(MLHP)的热性能。此外,MLHP在实验室中以五种不同的配置进行了测试,其中回路组件之间的相对高度和倾斜度发生了变化,以便研究重力对回路性能的影响并验证分析模型预测这种影响的能力。模拟的MLHP性能测试包括启动,高功率,热传输极限以及两个蒸发器之间的热负荷分配。在所有建模的测试中,LHP分析模型都能准确预测LHP的稳态和瞬态行为。此外,该模型运行时高效,并且在所有情况下均能提供稳定的解决方案。

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